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    • 3. 发明申请
    • RENORMALIZATION METHOD OF EXCORE DETECTOR
    • 检测器的检测方法
    • US20100104059A1
    • 2010-04-29
    • US12345530
    • 2008-12-29
    • Moon Ghu ParkHo Cheol ShinYong Hee Kim
    • Moon Ghu ParkHo Cheol ShinYong Hee Kim
    • G21C17/00
    • G21C17/00G21C17/10
    • Disclosed is a calibration method of an excore detector used in core power monitoring of a nuclear power plant, in which a spatial weighting function (SWF), used to theoretically predict a signal of the excore detector is multiplied by a designated calibration factor to reflect characteristics of the excore detector in a calibration process. It is assumed that the SWF is the multiplication of a one-dimensional shape annealing function (SAF) and a two-dimensional SWF, and the SAF is multiplied by the calibration factor. Since the SAF is calculated in a normalized form, the multiplication of the SAF by the calibration factor to reflect characteristics of the excore detector corresponds to new normalization and thus the calibration of the SAF is referred to as renormalization The signal of the excore detector is considerably accurately predicted by multiplying the theoretically calculated SAF by the renormalization factor, and the multiplication is equally applied although the characteristics of the excore detector are highly changed. An increase in the accuracy of the excore detector in the nuclear power plant prevents unnecessary reactor trips and allows a reactor to be operated at a stable power, thus obtaining the safety of a core and raising economical efficiency.
    • 公开了一种用于核电站核心功率监测的探测器的校准方法,其中用于理论预测探测器的信号的空间加权函数(SWF)乘以指定的校准因子以反映特征 的检测器在校准过程中。 假设SWF是一维形状退火函数(SAF)和二维SWF的乘法,并且SAF乘以校准因子。 由于以归一化形式计算SAF,因此SAF乘以校准因子以反映出探测器的特征对应于新的归一化,因此SAF的校准被称为重归一化。该探测器的信号相当大 通过将理论计算的SAF乘以重新归一化因子来精确地预测,并且乘法同样地应用,尽管excore检测器的特性被高度改变。 核电站中的探测器的准确度的提高防止了不必要的反应器跳闸,并且允许反应器以稳定的功率运行,从而获得核心的安全性并提高经济效率。